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Unstructured Grid Approaches for Accurate Aeroheating Simulations

机译:用于精确的Aeropeating模拟的非结构化网格方法

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The use of tetrahedral, prismatic, and hybrid hexahedral-prismatic-tetrahedral grids for the accurate prediction of aerodynamic heating at hypersonic conditions is investigated. We find that tetrahedral grids introduce significant error in the vicinity of strong shock waves, which results in unacceptable aeroheating predictions. The source of this error is studied with an idealized model, and it is found that a large spurious component of post-shock velocity is generated by triangular and tetrahedral elements. This type error is much smaller and easier to control on quadrilateral or hexahedral grids. Thus, we are very skeptical about the utility of tetrahedral grids for accurate hypersonic aeroheating predictions. Several comparisons of heating predictions for a three-dimensional sphere are made, and it is found that the stagnation region results are very sensitive to the grid design. Based on this work and our experience, we advocate the use of unstructured hexahedral grids which increase the grid design space, reduce the element count for many geometries, and result in accurate aeroheating predictions.
机译:研究了使用四面体,棱柱形和杂交六面前 - 棱镜栅格,用于精确预测超声局部气动加热。我们发现四面体网格在强冲击波附近引入显着的误差,这导致不可接受的空气性的预测。使用理想化模型研究了该误差的来源,并发现通过三角形和四面体元件产生的休震速度的大杂色分量。在四边形或六面体网格上控制这种类型的误差要小得多,更容易控制。因此,我们对四面体网格的效用非常持怀疑态度,用于精确过度的高超声波的安全性预测。制作了对三维球体的加热预测的几个比较,发现停滞区域结果对网格设计非常敏感。基于这项工作和我们的经验,我们倡导使用增加网格设计空间的非结构化六面向网格,减少了许多几何形状的元素计数,并导致准确的Aeropating预测预测。

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